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P-ISSN: 2971-785X
E-ISSN: 3141-4095

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Volume 1, Issue 2

Research Article

Design And Optimization of Three Phase Induction Motor for Transport Application

Published: October 30, 2024 | Volume: 1 | Issue: 2

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View Count: 22 Page No: 171-180

Design And Optimization of Three Phase Induction Motor for Transport Application

Ephraim Bassey Ekpenyong1 corresponding author email *, Gertrude Fischer2 , Asuquo Eke3

Published: October 30, 2024 | Issue: Volume 1, Issue 2

Page No. 171–180

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Corresponding Author: Ephraim Bassey Ekpenyong

Email: ephraims202@gmail.com

1 Department of Electrical Electronic Engineering, Faculty of Engineering, University of Cross River State, Calabar, Nigeria.

2 Department of Electrical Electronic Engineering, Faculty of Engineering, University of Cross River State, Calabar, Nigeria.

3 Department of Electrical Electronic Engineering, Faculty of Engineering, University of Cross River State, Calabar, Nigeria.

Received: September 20, 2024 Reviewed: October 23, 2024 Accepted: October 30, 2024

Abstract

The growing demand for sustainable and energy-efficient transportation systems has driven the need for advanced electric motor technologies. Three-phase induction motors (TPIMs), known for their robustness and cost effectiveness, are gaining attention as a viable alternative to permanent magnet motors (PMMs) in transport applications. However, TPIMs face several challenges in meeting the specific requirements of transportation systems, including compact size, lightweight construction, and high torque performance under dynamic load conditions. This study aims to design and optimize TPIMs for electric vehicles and other transport systems, focusing on improving efficiency, reducing energy losses, and enhancing thermal performance. A comprehensive design framework will be developed, integrating electromagnetic modelling and thermal management strategies, with a focus on sustainable material selection to reduce environmental impact. Advanced optimization techniques, such as genetic algorithms optimization, was applied to balance key design objectives, including efficiency, cost, and power density. Simulation and experimental validation were conducted to assess the practical applicability of the optimized designs. The results of this study showed that three phase induction motors when modelled and optimized, they are more efficient, sustainable, and cost-effective in transportation, supporting the transition to cleaner, electrified transportation systems as shown in the plotted figures of the result.

Keywords: Design, Modelling, Optimisation, Three-phase Induction Motor, Rotor Bars, Transportation systems

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APA
Ephraim Bassey Ekpenyong et al. (2024). Design And Optimization of Three Phase Induction Motor for Transport Application . Nigerian Journal of Engineering Research, 1(2), 171-180. https://izlik.org/JA28WS58XL
AMA
Ephraim Bassey Ekpenyong et al. Design And Optimization of Three Phase Induction Motor for Transport Application . Nigerian Journal of Engineering Research. 2024;1(2):171-180. https://izlik.org/JA28WS58XL
Chicago
Ephraim Bassey Ekpenyong et al. 2024. \"Design And Optimization of Three Phase Induction Motor for Transport Application \". Nigerian Journal of Engineering Research 1 (2): 171-180. https://izlik.org/JA28WS58XL.
IEEE
[1] Ephraim Bassey Ekpenyong et al., \"Design And Optimization of Three Phase Induction Motor for Transport Application \", Nigerian Journal of Engineering Research, vol. 1, no. 2, pp. 171-180, Oct 2024. [Online]. Available: https://izlik.org/JA28WS58XL
MLA
Ephraim Bassey Ekpenyong et al. \"Design And Optimization of Three Phase Induction Motor for Transport Application \". Nigerian Journal of Engineering Research, vol. 1, no. 2, Oct 2024, pp. 171-180, https://izlik.org/JA28WS58XL.
Vancouver
1. Ephraim Bassey Ekpenyong et al. Design And Optimization of Three Phase Induction Motor for Transport Application . Nigerian Journal of Engineering Research [Internet]. 2024 Oct. 30;1(2):171-180. Available from: https://izlik.org/JA28WS58XL

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